The I-mode is a plasma regime obtained when the usual L-H power threshold is high, e.g. with unfavourable ion B ∇ direction. It is characterised by the development of a temperature pedestal while the density remains roughly as in the L-mode. This leads to a confinement improvement above the L-mode level which can sometimes reach H-mode values. This regime, already obtained in the ASDEX Upgrade tokamak about two decades ago, has been studied again since 2009 taking advantage of the development of new diagnostics and heating possibilities. The I-mode in ASDEX Upgrade has been achieved with different heating methods such as NBI, ECRH and ICRF. The I-mode properties, power threshold, pedestal characteristics and confinement...
Recent studies at ASDEX Upgrade aim to further characterize and understand the physics of the improv...
The confinement physics of the improved H-mode is analysed in detail. It is shown that this scenario...
Recent studies at ASDEX Upgrade aim to further characterize and understand the physics of the improv...
In a comparative study of various confinement regimes the H-mode demonstrated the best performance. ...
This paper describes joint ITPA studies of the I-mode regime, which features an edge thermal barrier...
This paper describes joint ITPA studies of the I-mode regime, which features an edge thermal barrier...
Properties of the Imode confinement regime on the ASDEX Upgrade tokamak are summarized. A weak de...
Studies in ASDEX Upgrade of the phenomenology and scaling of the H-mode transition, of edge-localize...
Studies in ASDEX Upgrade of the phenomenology and scaling of the H-mode transition, of edge-localize...
Studies in ASDEX Upgrade of the phenomenology and scaling of the H-mode transition, of edge-localize...
H-mode operational boundaries and H-mode confinement are investigated on ASDEX Upgrade. The local ed...
International audienceProperties of the I-mode confinement regime on the ASDEX Upgrade tokamak are s...
International audienceProperties of the I-mode confinement regime on the ASDEX Upgrade tokamak are s...
The I-mode confinement regime can feature small edge temperature drops that can lead to an increase ...
The confinement physics of the improved H-mode is analysed in detail. It is shown that this scenario...
Recent studies at ASDEX Upgrade aim to further characterize and understand the physics of the improv...
The confinement physics of the improved H-mode is analysed in detail. It is shown that this scenario...
Recent studies at ASDEX Upgrade aim to further characterize and understand the physics of the improv...
In a comparative study of various confinement regimes the H-mode demonstrated the best performance. ...
This paper describes joint ITPA studies of the I-mode regime, which features an edge thermal barrier...
This paper describes joint ITPA studies of the I-mode regime, which features an edge thermal barrier...
Properties of the Imode confinement regime on the ASDEX Upgrade tokamak are summarized. A weak de...
Studies in ASDEX Upgrade of the phenomenology and scaling of the H-mode transition, of edge-localize...
Studies in ASDEX Upgrade of the phenomenology and scaling of the H-mode transition, of edge-localize...
Studies in ASDEX Upgrade of the phenomenology and scaling of the H-mode transition, of edge-localize...
H-mode operational boundaries and H-mode confinement are investigated on ASDEX Upgrade. The local ed...
International audienceProperties of the I-mode confinement regime on the ASDEX Upgrade tokamak are s...
International audienceProperties of the I-mode confinement regime on the ASDEX Upgrade tokamak are s...
The I-mode confinement regime can feature small edge temperature drops that can lead to an increase ...
The confinement physics of the improved H-mode is analysed in detail. It is shown that this scenario...
Recent studies at ASDEX Upgrade aim to further characterize and understand the physics of the improv...
The confinement physics of the improved H-mode is analysed in detail. It is shown that this scenario...
Recent studies at ASDEX Upgrade aim to further characterize and understand the physics of the improv...